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Liquid crystal alignment on ZnO nanostructure films

机译:ZnO纳米结构薄膜上的液晶取向

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The study of liquid crystal (LC) alignment is important for fundamental researches and industrial applications. The tunable pretilt angles of liquid crystal (LC) molecules aligned on the inorganic zinc oxide (ZnO) nanostructure films with controllable surface wettability are demonstrated in this work. The ZnO nanostructure films are deposited on the ITO-glass substrates by the two-steps hydrothermal process, and their wettability can be modified by annealing. Our experimental results show that the pretilt angles of LCs on ZnO nanostructure films can be successfully adjusted over a wide range from ~90° to ~0° as the surface energy on the ZnO nanostructure films changes from ~30 to ~70 mJ/m. Finally, we have applied this technique to fabricate a no-bias optically-compensated bend (OCB) LCD with ZnO nanostructure films annealed at 235 ℃.
机译:液晶(LC)取向的研究对于基础研究和工业应用非常重要。在这项工作中证明了在无机氧化锌(ZnO)纳米结构薄膜上排列的液晶(LC)分子的可调预倾角具有可控的表面润湿性。 ZnO纳米结构薄膜通过两步水热法沉积在ITO玻璃基板上,其润湿性可以通过退火来改变。我们的实验结果表明,随着ZnO纳米结构膜的表面能从〜30 mJ / m改变,LCs在〜90°至〜0°的宽范围内可以成功地调节LC的预倾角。最后,我们已经应用该技术制造了具有235℃退火温度的ZnO纳米结构薄膜的无偏置光学补偿弯曲(OCB)LCD。

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